Using color photometry to separate transiting exoplanets from false positives
arXiv:astro-ph/0406201 · doi:10.1051/0004-6361:20035792
Abstract
The radial velocity technique is currently used to classify transiting objects. While capable of identifying grazing binary eclipses, this technique cannot reliably identify blends, a chance overlap of a faint background eclipsing binary with an ordinary foreground star. Blends generally have no observable radial velocity shifts, as the foreground star is brighter by several magnitudes and therefore dominates the spectrum, but their combined light can produce events that closely resemble those produced by transiting exoplanets. The radial velocity technique takes advantage of the mass difference between planets and stars to classify exoplanet candidates. However, the existence of blends renders this difference an unreliable discriminator. Another difference must therefore be utilized for this classification -- the physical size of the transiting body. Due to the dependence of limb darkening on color, planets and stars produce subtly different transit shapes. These differences can be relatively weak, little more than 1/10th the transit depth. However, the presence of even small color differences between the individual components of the blend increases this difference. This paper will show that this color difference is capable of discriminating between exoplanets and blends reliably, theoretically capable of classifying even terrestrial-class transits, unlike the radial velocity technique.
8 pages, 4 figures, accepted by A&A
References in corpus (7)
- On the Unique Solution of Planet and Star Parameters from an Extrasolar Planet Transit Light Curve
- HST Time-Series Photometry of the Transiting Planet of HD 209458
- High-resolution spectroscopic follow-up of OGLE planetary transit candidates in the Galactic bulge: two possible Jupiter-mass planets and two blends
- On the Selection of Photometric Planetary Transits
- Detecting Reflected Light from Close-In Extrasolar Giant Planets with the Kepler Photometer
- Probing the atmosphere of a solar-like star by galactic microlensing at high magnification
- A Possible New Transiting Planet
Cited by in corpus (27)
- WASP-3b: a strongly-irradiated transiting gas-giant planet
- Kepler-22b: A 2.4 Earth-radius Planet in the Habitable Zone of a Sun-like Star
- The Kepler-19 System: A Transiting 2.2 R_Earth Planet and a Second Planet Detected via Transit Timing Variations
- Multicolour photometry for exoplanet candidate validation
- A Photometric Diagnostic to Aid in the Identification of Transiting Extra-Solar Planets
- MuSCAT2: four-color Simultaneous Camera for the 1.52-m Telescopio Carlos Sánchez
- The GTC exoplanet transit spectroscopy survey I: OSIRIS transmission spectroscopy of the short period planet WASP-43b
- MuSCAT2 multicolour validation of TESS candidates: an ultra-short-period substellar object around an M dwarf
- Two Views of the Radius Gap and the Role of Light Curve Fitting
- Exoplanet Characterization by Multi-Observatory Transit Photometry with TESS and CHEOPS
- The GTC exoplanet transit spectroscopy survey II: An overly-large Rayleigh-like feature for exoplanet TrES-3b
- A temperature inversion in WASP-33b? Large Binocular Telescope occultation data confirm significant thermal flux at short wavelengths
- Outcome of Six Candidate Transiting Planets from a TrES Field in Andromeda
- First Light of Engineered Diffusers at the Nordic Optical Telescope Reveal Time Variability in the Optical Eclipse Depth of WASP-12b
- Demonstrating High-precision, Multiband Transit Photometry with MuSCAT: A Case for HAT-P-14b
- Confirmation of an exoplanet using the transit color signature: Kepler-418b, a blended giant planet in a multiplanet system
- A hot sub-Neptune in the desert and a temperate super-Earth around faint M dwarfs: Color validation of TOI-4479b and TOI-2081b
- Detection of transit timing variations in excess of one hour in the Kepler multi-planet candidate system KOI 806 with the GTC
- Validation of up to seven TESS planet candidates through multi-colour transit photometry using MuSCAT2 data
- High-resolution infrared spectroscopy as a tool to detect false positives of transit search programs
- Vetting Kepler Planet Candidates with Multi-Color Photometry from the GTC: Identification of an Eclipsing Binary Star Near KOI 565
- The strange case of Na I in the atmosphere of HD209458 b: Reconciling low- and high-resolution spectroscopic observations G
- The color signature of the transit of HD 209458: Discrepancies between stellar atmospheric models and observations
- Migration and Evolution of giant ExoPlanets (MEEP) II: Super-Jupiters and Lithium-rich Host Stars
- Planet Hunters NGTS: New Planet Candidates from a Citizen Science Search of the Next Generation Transit Survey Public Data
- Joint Analysis of Multicolor Photometry: A New Approach to Constrain the Nature of Multiple-Star Systems Hosting Exoplanet Candidates
- NGTS-EB-8: A double-lined eclipsing M+M binary discovered by citizen scientists